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Design Analysis and Experimental Validation of a Double Rotor Synchronous PM Machine Used for HEV

机译:混合动力汽车用双转子同步永磁电机的设计分析与实验验证

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The paper presents a new rotary actuator design—the double rotor permanent magnet synchronous machine (DRPMSM), which is to be used in hybrid electric vehicles (HEVs) as a four-quadrant drive system. The focus in this paper is placed on the electromagnetic design, construction and the experimental validation of the proposed DRPMSM. In contrast to other, this work evaluates the radial-radial electric machine concept with one permanent magnet per pole on the outer rotor. Because of the newly proposed outer rotor design, special attention has been given to investigation of the most appropriate stator-slot/outer-rotor pole/inner-rotor-slot number combination. The DRPMSM performance with six different slot-pole-slot combinations was evaluated based on postprocessing of results from time-stepping finite element analyses (FEA). It was elaborated that the combination 36-8-36 was the most appropriate. It is distinguished by low harmonic distortion in the back electromotive force, high average torque with low ripple, and low iron loss as well. A machine prototype based on the 36-8-36 design has been manufactured and rigorously tested in generator and motor operation.
机译:本文提出了一种新型的旋转执行器设计,即双转子永磁同步电机(DRPMSM),该电机将在混合动力电动汽车(HEV)中用作四象限驱动系统。本文的重点放在所提出的DRPMSM的电磁设计,构造和实验验证上。与其他方法相比,这项工作评估了径向-径向电机的概念,其中外转子上的每个磁极一个永磁体。由于新提出了外转子设计,因此特别注意了最合适的定子槽/外转子极/内转子槽数组合的研究。基于对时步有限元分析(FEA)的结果进行后处理,评估了具有六种不同的槽-极-槽组合的DRPMSM性能。有人说,最合适的组合是36-8-36。它的特点是反电动势的谐波失真低,平均转矩高,纹波小,铁损也低。已经制造出基于36-8-36设计的机器原型,并在发电机和电动机运行中进行了严格的测试。

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